w- led用镝离子掺杂钨酸盐荧光粉的结构和发光性能

Anu ., Nisha Deopa, A. Rao
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引用次数: 1

摘要

在本研究中,采用常规固相反应合成了一种在白色区域发光的掺杂Dy3+的钨酸盐荧光粉。合成的荧光粉材料的x射线衍射(XRD)图被记录下来用于结构分析和物相鉴定。钨酸盐荧光粉的衍射峰与标准的JCPDS模式匹配良好。利用漫反射光谱(DRS)测量了合成荧光粉的光学带隙值。在360 nm激发下,Dy3+离子激活的钨酸盐荧光粉的光致发光(PL)光谱特征显示,蓝色区域(490 nm)有较强的发光峰,黄色区域(580 nm)有较弱的发光峰,红色区域(683nm)有较弱的发光峰。从记录的PL光谱来看,在制备的荧光粉材料中掺杂浓度为1.0 mol%的Dy3+离子时,CIE色度坐标(0.33046,0.37422)落在白色区域。CCT值(5580K)表示其应用于冷白光发光二极管(w- led)。在360nm激发下,在480nm处记录的PL衰减光谱曲线表现出双指数行为。温度相关的PL (TDPL)测量表明,合成的荧光粉具有相对较好的热稳定性。所有的研究最终使我们能够考虑Dy3+离子掺杂钨酸盐荧光粉用于w-LED的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural and luminescent properties of dysprosium ions-doped tungstate phosphor for w-LEDs
In the present research work, a Dy3+ doped Tungstate phosphor that emits light in white region has been synthesized using conventional solid-state reaction. An X-ray diffraction (XRD) pattern for the as-synthesized phosphor material was recorded for structural analysis and phase identification. The diffraction peaks of the tungstate phosphor match very well with the standard JCPDS pattern. The optical band gap value of the as-synthesized phosphor has been measured using diffuse reflectance spectra (DRS). The photoluminescence (PL) spectral features recorded for the Dy3+ ions activated tungstate phosphor under 360 nm excitation reveal strong emission peaks in blue (490 nm), a relatively less intense peak in the yellow region (580 nm) and a significantly less intense red peak (683 nm). From the recorded PL spectra, the CIE chromaticity coordinates (0.33046, 0.37422) estimated for 1.0 mol% doping concentration of Dy3+ ions in the as-prepared phosphor material are falling in the white region. CCT value (5580K) signifies its application for cool white light-emitting diode (w-LEDs). The PL decay spectral profile recorded at 480 nm emission under 360 nm excitation shows double exponential behaviour. The temperature-dependent PL (TDPL) measurements demonstrate relatively better thermal stability for the as-synthesized phosphor. All the investigations carried out finally allow us to contemplate the suitability of Dy3+ ions doped tungstate phosphor for w-LED.
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